956 resultados para AE AQUARII


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In this paper, we demonstrate strong flexoelectric coupling in bimesogenic liquid crystals. This strong coupling is determined via the flexoelectro-optic effect in chiral nematic liquid crystals based on bimesogenic mixtures that are doped with low concentrations of high twisting power chiral additive. Two mixtures were examined: one had a pitch length of p∼300nm, the other had a pitch length of p∼600nm. These mixtures exhibit enantiotropic chiral nematic phases close to room temperature. We found that full-intensity modulation, that is, a rotation of the optic axis of 45° between crossed polarizers, could be achieved at significantly lower applied electric fields (E<5Vμm -1) than previously reported. In fact, for the condition of full-intensity modulation, the lowest electric-field strength recorded was E=2Vμm-1. As a result of a combination of the strong flexoelectric coupling and a divergence in the pitch, tilt angles of the optic axis up to 87°, i.e., a rotation of the optic axis through 174°, were observed. Furthermore, the flexoelastic ratios, which may be considered as a figure-of-merit parameter, were calculated from the results and found to be large, ranging from 1.3to2C/Nm for a temperature range of up to 40°C. © 2006 American Institute of Physics.

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In this letter, the uniform lying helix (ULH) liquid crystal texture, required for the flexoelectro-optic effect, is polymer stabilized by the addition of a small percentage of reactive mesogen to a high-tilt-angle (φ>60°) bimesogenic chiral nematic host. The electro-optic response is measured for a range of reactive mesogen concentration mixtures, and compared to the large-tilt-angle switch of the pure chiral nematic mixture. The optimum concentration of reactive mesogen, which is found to provide ample stabilization of the texture with minimal impact on the electro-optic response, is found to be approximately 3%. Our results indicate that polymer stabilization of the ULH texture using a very low concentration of reactive mesogen is a reliable way of ruggedizing flexoelectro-optic devices without interfering significantly with the electro-optics of the effect, negating the need for complicated surface alignment patterns or surface-only polymerization. The polymer stabilization is shown to reduce the temperature dependence of the flexoelectro-optic response due to "pinning" of the chiral nematic helical pitch. This is a restriction of the characteristic thermochromic behavior of the chiral nematic. Furthermore, selection of the temperature at which the sample is ultraviolet cured allows the tilt angle to be optimized for the entire chiral nematic temperature range. The response time, however, remains more sensitive to operating temperature than curing temperature. This allows the sample to be cured at low temperature and operated at high temperature, providing simultaneous optimization of these two previously antagonistic performance aspects. © 2006 American Institute of Physics.

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In the chiral nematic phase, flexoelectricity can give rise to an interesting electrooptic switching effect, known as flexoelectro-optic switching. Flexoelectro-optic switching gives a fast v-shaped switching regime. Previous studies show that symmetric bimesogens are particularly suited for flexoelectro-optic switching. By introducing two ester linking groups into the molecular structure of a symmetric bimesogen, it was hypothesised that the flexoelectric properties will be enhanced significantly because of the resulting increase in the dipole moment of the molecules. This was found to be the correct; however, the inclusion of ester linking groups reduced the liquid crystallinity of the material.

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In this paper, we report on the flexoelastic and viscoelastic ratios for a number of bimesogens compounds with the same generic structure. Values are obtained indirectly by measuring the flexoelectro-optic response in the chiral nematic phase. By varying the molecular structure we alter the bend angle, transverse dipole moment, and length of the molecule. First, to examine the influence of the bend angle we use a homologous series whereby the only alteration in the molecular structure is the number of methylene units in the aliphatic spacer, n. Results show that the flexoelastic ratio, e K, and the effective flexoelectric coefficient, e, both exhibit an odd-even effect with values for n=odd being greater than that for n=even. This is understood in terms of an increase in the bend angle of the molecule and an increase in the transverse dipole moment. Second, in order to investigate the impact of the dipole moment, we have altered the mesogenic units so as to vary the longitudinal dipole moment and used different linkages in the aliphatic spacer in an attempt to alter the transverse dipole moment. Qualitatively, the results demonstrate that the odd-spaced bimesogen with larger transverse dipole moments exhibit larger flexoelastic ratios. © 2007 The American Physical Society.

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While it is well known that it is possible to determine the effective flexoelectric coefficient of nematic liquid crystals using hybrid cells [1], this technique can be difficult due to the necessity of using a D.C. field. We have used a second method[2], requiring an A.C. field, to determine this parameter and here we compare the two techniques. The A.C. method employs the linear flexoelectrically induced linear electro-optic switching mechanism observed in chiral nematics. In order to use this second technique a chiral nematic phase is induced in an achiral nematic by the addition of a small amount of chiral additive (∼3% concentration w/w) to give helix pitch lengths of typically 0.5-1.0 μm. We note that the two methods can be used interchangeably, since they produce similar results, and we conclude with a discussion of their relative merits.

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To further investigate the mechanism of acoustic emission (AE) in the rock fracture experiment, moment tensor analysis was carried out. The AE sources characterized by crack sizes, orientations and fracture modes, are represented by a time-dependent momen

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Cell-implant adhesive strength is important for prostheses. In this paper, an investigation is described into the adhesion of bovine chondrocytes to Ti6Al4V-based substrates with different surface roughnesses and compositions. Cells were cultured for 2 or 5 days, to promote adhesion. The ease of cell removal was characterised, using both biochemical (trypsin) and mechanical (accelerated buoyancy and liquid flow) methods. Computational fluid dynamics (CFD) modelling has been used to estimate the shear forces applied to the cells by the liquid flow. A comparison is presented between the ease of cell detachment indicated using these methods, for the three surfaces investigated. © 2008 Materials Research Society.

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A brief analysis is presented of how heat transfer takes place in porous materials of various types. The emphasis is on materials able to withstand extremes of temperature, gas pressure, irradiation, etc., i.e. metals and ceramics, rather than polymers. A primary aim is commonly to maximize either the thermal resistance (i.e. provide insulation) or the rate of thermal equilibration between the material and a fluid passing through it (i.e. to facilitate heat exchange). The main structural characteristics concern porosity (void content), anisotropy, pore connectivity and scale. The effect of scale is complex, since the permeability decreases as the structure is refined, but the interfacial area for fluid-solid heat exchange is, thereby, raised. The durability of the pore structure may also be an issue, with a possible disadvantage of finer scale structures being poor microstructural stability under service conditions. Finally, good mechanical properties may be required, since the development of thermal gradients, high fluid fluxes, etc. can generate substantial levels of stress. There are, thus, some complex interplays between service conditions, pore architecture/scale, fluid permeation characteristics, convective heat flow, thermal conduction and radiative heat transfer. Such interplays are illustrated with reference to three examples: (i) a thermal barrier coating in a gas turbine engine; (ii) a Space Shuttle tile; and (iii) a Stirling engine heat exchanger. Highly porous, permeable materials are often made by bonding fibres together into a network structure and much of the analysis presented here is oriented towards such materials. © 2005 The Royal Society.

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A model is presented for prediction of the fracture energy of ceramic-matrix composites containing dispersed metallic fibres. It is assumed that the work of fracture comes entirely from pull-out and/or plastic deformation of fibres bridging the crack plane. Comparisons are presented between these predictions and experimental measurements made on a commercially-available composite material of this type, containing stainless steel (304) fibres in a matrix predominantly comprising alumina and alumino-silicate phases. Good agreement is observed, and it's noted that there is scope for the fracture energy levels to be high (~20kJm-2). Higher toughness levels are both predicted and observed for coarser fibres, up to a practical limit for the fibre diameter of the order of 0.5mm. Other deductions are also made concerning strategies for optimisation of the toughness of this type of material. © 2010 Elsevier Ltd.

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Bonded networks of metal fibres are highly porous, permeable materials, which often exhibit relatively high strength. Material of this type has been produced, using melt-extracted ferritic stainless steel fibres, and characterised in terms of fibre volume fraction, fibre segment (joint-to-joint) length and fibre orientation distribution. Young's moduli and yield stresses have been measured. The behaviour when subjected to a magnetic field has also been investigated. This causes macroscopic straining, as the individual fibres become magnetised and tend to align with the applied field. The modeling approach of Markaki and Clyne, recently developed for prediction of the mechanical and magneto-mechanical properties of such materials, is briefly summarised and comparisons are made with experimental data. The effects of filling the inter-fibre void with compliant (polymeric) matrices have also been explored. In general the modeling approach gives reliable predictions, particularly when the network architecture has been characterised using X-ray tomography. © 2005 Published by Elsevier Ltd.

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DNA microarrays provide such a huge amount of data that unsupervised methods are required to reduce the dimension of the data set and to extract meaningful biological information. This work shows that Independent Component Analysis (ICA) is a promising approach for the analysis of genome-wide transcriptomic data. The paper first presents an overview of the most popular algorithms to perform ICA. These algorithms are then applied on a microarray breast-cancer data set. Some issues about the application of ICA and the evaluation of biological relevance of the results are discussed. This study indicates that ICA significantly outperforms Principal Component Analysis (PCA).

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La mora (Rubus glaucus, Benth), es una planta en proceso de domesticación que se cultiva en pequeñas huertas ó parcelas siendo hospedera de un sin número de insectos plagas y enfermedad es. En la actualidad en Nicaragua encontramos, plantaciones de mora establecidas desde hace aproximadamente 3 años, como una alternativa de diversificación de fincas cafetaleras en las zonas de los departamentos de Madriz y Nueva Segovia, no existiendo has ta la fecha un informe formal sobre los principales insectos plagas e insectos benéficos y enfermedades presentes en el cultivo. Ante tal situación y debido a la importancia que esta tomando el cultivo de mora, se realizó una investigación con el objetivo de describir la fluctuación poblacional de los insectos plagas y sus depredadores naturales y además la incidencia de enfermedades asociadas al cultivo de mora. El estudio se realizó en la finca La Patasta, Municipio La Sabana, Departamento de Madriz, en e l periodo comprendido entre Septiembre 2004 a Abril 2005. El monitoreo se realizó semanalmente en cinco sitios específicos, realizando capturas manuales de especimenes con ayudas de vasos cristalinos y cámaras húmedas en el caso de enfermedades. Los result ados obtenidos fueron los siguientes: se identificó y se describió la fluctuación poblacional de insectos de las principales familias Scarabaeidae, Chrysomelidae, Curculionidae, Cantharidae, así como las principales familias del orden Hemíptero (Cicadellid ae, Pentatomidae, Miridae) y el orden Orthóptero (Acrididae y Tettigonidae), de igual forma se identificaron y se describieron la fluctuación poblacional de Depredadores Naturales de insectos de la familia Staphilinidae, Coccinelidae, Vespidae y Aracnidae, así como también se identificaron y se describieron las incidencias de las principales enfermedades causadas por ( Cercospora spp, Xanthomona spp y Botrytis spp ) presentes en el cultivo de mora.

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Contenido: El amanuense de Borges / Roberto Alifano – Presencia de la muerte en Los conjurados / María Amelia Arancet Ruda – Borges y el género biográfico / Graciela del Carmen Barreiro – Alemania en Borges / Claudia E. de Belva – Perfiles biográficos en La intrusa de Carlos Hugo Christensen / Armando Capalbo – Borges y la literatura oral / Norma Carricaburo – Hacia un cronotopo rioplatense en Borges: su lectura de La tierra purpúrea de Guillermo E. Hudson / Laura F. Cilento – Borges “Autor universal entre dos mundos” / Héctor Ciocchini – Jorge Luis Borges en el canon occidental / Jorge Dubatti – La estructura circular en dos cuentos de Jorge Luis Borges / Sara Beatriz Fernández March – Borges y su concepción de la historia / Teresita Frugoni de Fritzsche – Borges y la isotopía de la incertidumbre / Mariano García ; clara Miri – Algunas consideraciones sobre el uso del diálogo en la narrativa borgeana / Javier Roberto González – Cervantes por Borges: las lecturas posibles / Silvina Cristina Lstra Paz – Civilización y barbarie: dos versiones del sueño de la historia / María Rosa Lojo – Algunas preferencias literarias en “Los Amigos”, de Jorge Luis Borges / Nora Longhini – El Astrólogo postergado: Xul Solar y Borges en la década del 20 / Fabiana Elisa Martínez – El “arte poética” de Borges, una estética de la duración / Luis Martínez Cuitiño – Aproximaciones al pensamiento de Jorge Luis Borges: la vuelta al humanismo / Graciela Maturo – Los hacedores en El hacedor de Borges / Valeria Melchiore – Jorge L. Borges: Autobiografía y (Auto)ficción / Ros aE. M. D. Penna – Polifonía y contrapunto en la narrativa de Jorge Luis Borges / Elisa Rey – Borges o la pregunta por el ser / Ana María Rodríguez Francia – Emerson y Borges, dos americanos ante la Historia / María Alejandra Rosarossa – Un homenaje a Jorge Luis Borges en La prisión de la libertad de Michael Ende / Nora Lía Sormani – La memoria de Shakespeare: Borges y el laberinto de la memoria / María Esther Vázquez – Reseñas bibliográficas